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EP1868199A1 - An optical disc recording and reproducing apparatus for performing a formatting process as a background process and a method for formatting an optical disc by a background process - Google Patents

An optical disc recording and reproducing apparatus for performing a formatting process as a background process and a method for formatting an optical disc by a background process Download PDF

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Publication number
EP1868199A1
EP1868199A1 EP07117370A EP07117370A EP1868199A1 EP 1868199 A1 EP1868199 A1 EP 1868199A1 EP 07117370 A EP07117370 A EP 07117370A EP 07117370 A EP07117370 A EP 07117370A EP 1868199 A1 EP1868199 A1 EP 1868199A1
Authority
EP
European Patent Office
Prior art keywords
optical disc
recording
formatting
rewritable optical
formatting process
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
EP07117370A
Other languages
German (de)
French (fr)
Inventor
Hirokuni 5-14-38-402 Hiyoshi Hashimoto
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Ricoh Co Ltd
Original Assignee
Ricoh Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
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Application filed by Ricoh Co Ltd filed Critical Ricoh Co Ltd
Publication of EP1868199A1 publication Critical patent/EP1868199A1/en
Withdrawn legal-status Critical Current

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/06Digital input from, or digital output to, record carriers, e.g. RAID, emulated record carriers or networked record carriers
    • G06F3/0601Interfaces specially adapted for storage systems
    • G06F3/0628Interfaces specially adapted for storage systems making use of a particular technique
    • G06F3/0638Organizing or formatting or addressing of data
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/06Digital input from, or digital output to, record carriers, e.g. RAID, emulated record carriers or networked record carriers
    • G06F3/0601Interfaces specially adapted for storage systems
    • G06F3/0602Interfaces specially adapted for storage systems specifically adapted to achieve a particular effect
    • G06F3/0614Improving the reliability of storage systems
    • G06F3/0617Improving the reliability of storage systems in relation to availability
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/06Digital input from, or digital output to, record carriers, e.g. RAID, emulated record carriers or networked record carriers
    • G06F3/0601Interfaces specially adapted for storage systems
    • G06F3/0668Interfaces specially adapted for storage systems adopting a particular infrastructure
    • G06F3/0671In-line storage system
    • G06F3/0673Single storage device
    • G06F3/0674Disk device
    • G06F3/0677Optical disk device, e.g. CD-ROM, DVD
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B20/00Signal processing not specific to the method of recording or reproducing; Circuits therefor
    • G11B20/10Digital recording or reproducing
    • G11B20/12Formatting, e.g. arrangement of data block or words on the record carriers
    • G11B20/1217Formatting, e.g. arrangement of data block or words on the record carriers on discs
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B20/00Signal processing not specific to the method of recording or reproducing; Circuits therefor
    • G11B20/10Digital recording or reproducing
    • G11B20/12Formatting, e.g. arrangement of data block or words on the record carriers
    • G11B20/1217Formatting, e.g. arrangement of data block or words on the record carriers on discs
    • G11B2020/1218Formatting, e.g. arrangement of data block or words on the record carriers on discs wherein the formatting concerns a specific area of the disc
    • G11B2020/1221Formatting, e.g. arrangement of data block or words on the record carriers on discs wherein the formatting concerns a specific area of the disc cluster, i.e. a data structure which consists of a fixed number of sectors or ECC blocks
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B2220/00Record carriers by type
    • G11B2220/20Disc-shaped record carriers
    • G11B2220/21Disc-shaped record carriers characterised in that the disc is of read-only, rewritable, or recordable type
    • G11B2220/215Recordable discs
    • G11B2220/216Rewritable discs
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B2220/00Record carriers by type
    • G11B2220/20Disc-shaped record carriers
    • G11B2220/25Disc-shaped record carriers characterised in that the disc is based on a specific recording technology
    • G11B2220/2537Optical discs
    • G11B2220/2545CDs
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B7/00Recording or reproducing by optical means, e.g. recording using a thermal beam of optical radiation by modifying optical properties or the physical structure, reproducing using an optical beam at lower power by sensing optical properties; Record carriers therefor
    • G11B7/007Arrangement of the information on the record carrier, e.g. form of tracks, actual track shape, e.g. wobbled, or cross-section, e.g. v-shaped; Sequential information structures, e.g. sectoring or header formats within a track
    • G11B7/00745Sectoring or header formats within a track

Definitions

  • the present invention generally relates to an optical disc recording and reproducing apparatus and, more particularly, to an optical disc recording and reproducing apparatus which records information on a rewritable optical disc such as a CD-RW.
  • a minimum unit for reproduction of information recorded on a recording area of a compact disc (CD), a recordable optical disc (CD-R) or a rewritable optical disc (CD-RW) is defined as a block of a recording area. Each block can contain information of about 2,048 to 2,352 bytes.
  • a minimum unit for recording information on an optical disc such as a CD-R or a CD-RW is defined as a packet.
  • Each packet comprises at least one user data block, five link blocks preceding the user data block and two link blocks subsequent to the user data block.
  • the five link blocks preceding the user data block include one link block and four run-in blocks.
  • the two link blocks subsequent to the user data block include two run-out blocks.
  • the link blocks are required for interconnecting a plurality of packets when information is recorded on an optical disc such as a CD.
  • the link block does not contain user data.
  • a rule for recording data on a CD is defined by a predetermined standard. Such a rule is referred to as a "linking rule”.
  • CD-R recordable compact disc
  • CD-RW rewritable compact disc
  • the track at-once method is for recording information on a track all at one time by using a single packet.
  • the user data blocks in the track are consecutive, and there are no link blocks between the user data blocks.
  • a single track constitutes a recording unit, and ninety-nine tracks can be formed on the optical disc at maximum.
  • a start address and an end address of each track are recorded on a separate area of the optical disc as a "table of contents (TOC)".
  • the packet write method is for recording information on a track by dividing the track into a plurality of packets so that the information is recorded on an individual packet basis. Since this method records information by each individual packet, each user data block is discretely located in a single track and link blocks are provided between adjacent ones of user data blocks.
  • the packet write method is classified into two types, that is, a "fixed packet write method” and a "variable packet write method".
  • a fixed packet write method a number of user data blocks within a track is set to a fixed number.
  • the number of user data blocks within a packet is referred to as a packet length or packet size.
  • packets having various packet lengths are provided in a single track.
  • the Universal Disc format is a file system that uses the fixed packet write system.
  • the UDF is used by various devices.
  • the UDF utilizes a recording format that takes advantage of a feature of each device.
  • the UDF uses a variable packet write method referred to as a sequential UDF which can perform a recording only by adding data after the previously recorded data. Thus, there is no need to consider a format.
  • a CD-RW drive is capable of recording data on a CD-RW by overwriting.
  • the CD-RW drive uses a random UDF which records data by each packet unit and reproduces the data by each block.
  • the random UDF In order to record and reproduce data at random, the random UDF requires a formatting operation by previously recording packets on the entire recording area or a designated area of the CD-RW, each of the packets having a fixed length, so that the entire recording area or the designated area are filled by the packets.
  • this formatting operation data can be randomly recorded on the recording area of the CD-RW, or data recorded on the CD-RW can be randomly reproduced.
  • the recording capacity of the CD-RW is represented by a time for continuously performing a recording operation. For example, one minute of recording corresponds to 9 megabytes, and data corresponding to about 74 minutes can be recorded on a CD-RW. Thus, it takes about 40 minutes to complete a recording of data including the TOC even if the recording is performed at a double recording speed. This means that one must wait for about 40 minutes until a formatting operation is completed in order to initially use a blank or new CD-RW.
  • Rewritable optical discs such as CD-RW include a structure which enables an optical disc recording and reproducing drive to detect an address on the just-fabricated or just-erased rewritable optical disc.
  • this pre-fabricated address corresponds to the ATIP encoded in a wobbled groove structure.
  • This wobble structure consists of a phase structure which is pre-imposed in the spiral track of the rewritable optical disc and which can be detected by an optical disc recording and reproducing drive. The detected signal can be transferred into digital data which correspond to certain areas also on the unformatted rewritable optical disc.
  • the rewritable optical disc has some address which cannot be erased in order to be able to access to parts of the rewritable optical disc and to be able to format the rewritable optical disc.
  • a typical optical Read Only Memory (ROM) disc drive is not able to use the pre-fabricated address to find a designated area on a rewritable optical disc.
  • An optical ROM disc drive needs a continuous track formed with data, i.e. user data or formatting data, recorded by a laser beam of an optical disc recording and reproducing drive to be able to access a desired area designated by a user or host computer.
  • the continuous track includes addresses that can be read by the ROM disc drive as well as the optical disc recording and reproducing drive. Therefore, the optical disc recording and reproducing drive needs formatting process that provides the continuous track in order for the optical ROM disc drive to access a designated location in the recording area.
  • the host computer that instructs where the user data are to be recorded on the data storage medium. Accordingly, the host computer or user sends a request for recording user data to the data storage medium, designating a particular address at which the user data are to be recorded.
  • a controller of the optical disc recording and reproducing drive performs the recording or reproducing process in accordance with the address instructed by the user or host computer.
  • User data can be stored in one fixed packet on a desired location in accordance with the address information as instructed by the user or host computer, regardless of whether the desired location is formatted or not, at least on the basis of the address information provided by the pre-fabricated address such as ATIP.
  • the optical disc recording and reproducing drive will use a number of fixed packets to recording all of user data.
  • a typical ROM optical disc drive cannot access such information, if there is no continuous track of data including address and link blocks.
  • a more specific object of the present invention is to provide an optical disc recording and reproducing apparatus which can record data, which is provided in a packet having a fixed length, on an optical disc without waiting for a long time for a completion of a formatting operation.
  • Another object of the present invention is to provide a formatting method for formatting a rewritable optical disc without delaying a recording operation or a reproducing operation performed on the optical disc.
  • an optical disc recording and reproducing apparatus comprising:
  • the formatting process is performed as a background process so that another process can be accepted when the formatting operation is being performed, execution of a recording operation or a reproducing operation may be performed without waiting until the formatting process is completed.
  • the background formatting means may include end-of-process notifying means for notifying completion of the formatting process before the formatting process is completed. Accordingly, a host computer connected to the optical disc recording and reproducing apparatus can accept another process to be performed by the optical disc recording and reproducing apparatus.
  • the background formatting means may include means for interrupting the formatting process when a request for recording user data is made, recording the user data on the optical disc and thereafter resuming the formatting process. Accordingly, a recording operation of data can be started at any time even when the formatting process is being performed.
  • the background formatting means may include means for resuming the formatting process by excluding an area in which the user data has been recorded from among areas to be formatted when the packets having a fixed length are not yet recorded in the area in which the user data has been recorded. Accordingly, the user data recorded while the formatting process is being performed is not erased by overwriting with the packets having the fixed length when the formatting process is resumed.
  • the background formatting means may include means for interrupting the formatting process when a request for reproducing data recorded in a designated area is made, reproducing the data and thereafter resuming the formatting process. Accordingly, a reproducing operation can be started at any time even when the formatting process is being performed.
  • the background formatting means may include means for prohibiting ejection of the optical disc when a request for ejecting the optical disc is made during an execution of the formatting process. Accordingly, the optical disc is not ejected when the formatting process is being performed. Thus, the optical disc is prevented from being incompletely formatted.
  • a formatting method for formatting a rewritable optical disc, data being recorded on the optical disc by using a fixed packet write method comprising the steps of; starting a formatting process for the optical disc as a background process, the formatting process being performed so as to fill a recording area of the optical disc by packets having a fixed length; enabling execution of another process while the formatting process is being performed; and ending the formatting process after the recording area to be formatted has been filled by the packets having the fixed length.
  • the formatting process is performed as a background process so that another process can be accepted when the formatting operation is being performed, execution of a recording operation or a reproducing operation may be performed without waiting until the formatting process is completed.
  • the step of enabling may comprise the step of notifying of completion of the formatting process before the formatting process is completed.
  • a host computer connected to the optical disc recording and reproducing apparatus can accept another process to be performed by the optical disc recording and reproducing apparatus.
  • the formatting method according to the present invention may further comprise the steps of:
  • a recording operation of data can be started at any time even when the formatting process is being performed.
  • the step of resuming may include the step of excluding an area in which the user data has been recorded from among areas to be formatted when the packets having the fixed length are not yet recorded in the area in which the user data has been recorded.
  • the user data recorded while the formatting process is being performed is not erased by overwriting with the packets having the fixed length when the formatting process is resumed.
  • formatting method according to the present invention may further comprise the steps of:
  • the formatting method according to the present invention may further comprise the step of prohibiting ejection of the optical disc when a request for ejecting the optical disc is made during an execution of the formatting process.
  • the optical disc is not ejected when the formatting process is being performed.
  • the optical disc is prevented from being incompletely formatted.
  • processor readable medium storing program codes causing an optical disc recording and reproducing apparatus to perform the above-mentioned formatting methods.
  • FIG.4 is a flowchart of a formatting process performed by the optical disc recording and reproducing apparatus shown in FIG.1, the formatting process being performed as a background process;
  • FIG.5 is a flowchart of a formatting process performed by the optical disc recording and reproducing apparatus shown in FIG.1 when a request for recording data on the optical disc is made while the formatting process is being performed as a background process;
  • FIG.6 is a flowchart of a formatting process performed by the optical disc recording and reproducing apparatus shown in FIG.1 so as to prevent a recording area from being formatted, user data having been recorded in the recording area, while the formatting process is being performed as a background process;
  • FIG.7 is a flowchart of a formatting process performed by the optical disc recording and reproducing apparatus shown in FIG.1 when a request for reproducing data recorded on the optical disc is made while the formatting process is being performed as a background process;
  • FIG.8 is a flowchart of a formatting process performed by the optical disc recording and reproducing apparatus shown in FIG.1 when a request for ejecting the optical disc is made while the formatting process is being performed as a background process.
  • FIG.1 is a block diagram of an optical disc recording and reproducing apparatus according to the first embodiment of the present invention.
  • the optical disc recording and reproducing apparatus shown in FIG.1 records information on an optical disc 1 such as a CD-RW by providing a train of pits spirally formed on the optical disc.
  • the optical disc recording and reproducing apparatus reads the information on the optical disc 1 by information units referred to as user data blocks.
  • the optical disc recording apparatus according to the present embodiment uses the above-mentioned fixed packet write method to record information on the optical disc 1.
  • the optical disc recording and reproducing apparatus is provided with a spindle motor 2, an optical pickup 3 and a coarse adjustment motor 4.
  • the spindle motor 2 rotates the optical disc 1.
  • the optical pickup 3 has a semiconductor laser which projects a laser beam L onto a recording area of the optical disc 1.
  • the coarse adjustment motor 4 moves the optical pickup 3 in a radial direction of the optical disc 1 in cooperation with a seek motor (not shown in the figure) provided in the optical pickup 3.
  • the optical disc recording and reproducing apparatus further includes a rotation control system 5, a coarse adjustment motor control system 6, an optical pickup control system 7 and a signal processing system 8.
  • the rotation control system 5 controls operation of the spindle motor 2.
  • the coarse adjustment motor control system 6 controls operation of the coarse adjustment motor 4.
  • the optical pickup control system 7 controls operation of the optical pickup 3.
  • the signal processing system 8 transmits information read by the optical pickup 3 and receives information to be recorded on the optical disc 1 by the optical pickup 3.
  • the optical disc recording apparatus is further provided with a controller 9 and an interface 10.
  • the controller 9 controls the above-mentioned rotation control system 5, the coarse adjustment motor control system 6, the optical pickup control system 7 and the processing system 8.
  • the interface 10 enables communication with an external host computer.
  • the optical pickup 3 is moved in the radial direction of the optical disc 1 while the optical disc 1 is rotated by the spindle motor 2 so as to record or read information by projecting the laser beam L from the semiconductor laser of the optical pickup 3 onto the recording area of the optical disc 1.
  • the controller 9 moves the optical pickup 3 in a radial direction of the optical disc 1 while the optical disc 1 is rotated.
  • the laser beam L is projected from the optical pickup 3 onto the recording area of the optical disc 1 at a recording power level so as to record the information on the optical disc 1.
  • the controller 9 moves the optical pickup 3 while the optical disc 1 is rotated.
  • the laser beam L is projected from the optical pickup 3 onto the recording area of the optical disc 1 at a reproducing power level so as to read the information recorded on the optical disc 1.
  • the reproduced information is transferred to the host computer via the interface 10.
  • the controller 9 controls a recording and reproducing operation of data in each track on the optical disc 1 according to the fixed packet write method.
  • the controller 9 also controls a formatting operation for the optical disc 1 in a background process. That is, the controller 9 serves as means for recording data on the rewritable optical disc 1 by the fixed packet write method and reproducing the recorded data. Additionally, the controller 9 sends a notification to notify of a completion of a formatting operation immediately after the formatting operation has started when the optical disc 1 is formatted. Thereafter, the controller 9 serves as background formatting means for formatting the optical disc 1 in a background process so as to record fixed packets in the entire recording area or a designated area of the optical disc 1.
  • controller 9 serves to interrupt the formatting operation when a request is made for recording user data during the formatting operation in the background process and restart the formatting operation after the user data has been recorded. Additionally, the controller 9 serves to resume the formatting operation, after the formatting operation is restarted while preventing the area in which the user data is recorded from being formatted.
  • controller 9 serves to interrupt the formatting operation when a request is made for reproducing user data recorded in a designated area during the formatting operation in the background process and restart the formatting operation after the user data recorded in the designated area has been reproduced. Additionally, the controller 9 serves to prohibit the optical disc 1 from being ejected when a request is made to eject the optical disc 1 while the formatting operation is performed as the background process.
  • FIG.2 is an illustration for explaining a track and a format of a packet recorded on the optical disc 1 in a fixed packet write method.
  • a plurality of tracks are formed in a recording area of the rewritable optical disc 1.
  • Each of the tracks is divided into a plurality of packets each having the same number of user data blocks so that information is recorded for each individual packet at once.
  • each of the packets 12 in a single track 11 in the recording area of the optical disc 1 has the same packet length, and each of the packets 12 has the same number of the user data blocks.
  • the packet 12 includes a plurality of user data blocks 15 which can be reproduced. Additionally, the packet 12 includes five link blocks preceding the user data blocks 15. The five link blocks consist of one link block 13 and four run-in blocks 14. The packet 12 further includes two link blocks subsequent to the user data blocks 14. The two link blocks consist of two run-out blocks 16. These link blocks are used for connecting the packets 12 to each other when data is recorded in the user data blocks 15 of the packets 12 in the track 11 of the optical disc 1.
  • FIG.3 is an illustration for explaining a format of the recording area of the optical disc which is formatted by the optical disc recording and reproducing apparatus shown in FIG. 1. As shown in FIG.3, when the entire recording area or a designated area of the optical disc 1 is subjected to the formatting operation according to the fixed packet recording method, the entire recording area or the designated area is filled by the fixed packets.
  • FIG.4 is a flowchart of the formatting process performed by the optical disc recording and reproducing apparatus shown in FIG.1.
  • step S1 a message to a host computer so as to notify a user (the host computer) that the formatting process has been completed.
  • step S2 an actual formatting operation is performed as a background process of the host computer.
  • the entire area or a designated area of the optical disc 1 is filled by packets having a fixed length. It is determined, in step S3, whether or not the area to be formatted is filled by the packets. If the area is not filled by the packets, the routine returns to step S2. If it is determined that the entire area is filled by the packets, the routine is ended.
  • FIG.5 is a flowchart of the formatting process performed as a background process when a request for recording is made during the formatting process.
  • the controller 9 Immediately after the formatting process for the optical disc 1 is started, the controller 9 outputs, in step S11, a message to a host computer so as to notify a user (the host computer) that the formatting process has been completed. Then, in step S12, an actual formatting operation is performed as a background process of the host computer. In the formatting operation, the entire area or a designated area of the optical disc 1 is filled by packets having a fixed length. It is then determined, in step S13, whether or not a request for recording is sent from the host computer.
  • step S13 If it is determined, in step S13, that a request for recording is not sent from the host computer, the routine proceeds to step S15. On the other hand, if it is determined, in step S13, that a request for recording is sent from the host computer, the routine proceeds to step S14. In step S14, the formatting operation is temporarily stopped so as to record a user data packet. After the recording of the user data packet is completed, the routine proceeds to step S15.
  • step S15 it is determined whether or not the area to be formatted is filled by the packets. If the area is not filled by the packets, the routine returns to step S12. If it is determined that the entire area to be formatted is filled by the packets, the routine is ended.
  • a recording operation can be performed any time the formatting operation is being progressed.
  • the optical disc recording and reproducing apparatus performs a formatting process shown in FIG.6.
  • FIG.6 is a flowchart of the formatting process for preventing a data recorded area from being formatted.
  • step S21 a message to a host computer so as to notify a user (the host computer) that the formatting process has been completed. It is then determined, in step S22, whether or not a user data packet has been recorded. If it is determined that the user data packet has been recorded, the routine proceeds to step S24. On the other hand, if it is determined that the user data packet has not been recorded, the routine proceeds to step S23. In step S23, an actual formatting operation is performed as a background process of the host computer. In the formatting operation, the entire area or a designated area of the optical disc 1 is filled by packets having a fixed length.
  • step S24 It is then determined, in step S24, whether or not a request for recording is sent from the host computer. If it is determined, in step S24, that a request for recording is not sent from the host computer, the routine proceeds to step S27. On the other hand, if it is determined, in step S24, that a request for recording is sent from the host computer, the routine proceeds to step S25 in which the formatting operation is temporarily stopped so as to record a user data packet. After the recording of the user data packet is completed, the routine proceeds to step S26. In step S26, the formatting operation is restarted and an address of the area in which the user data packet has been recorded is stored, and the routine proceeds to step S27.
  • step S27 it is determined whether or not the area to be formatted is filled by the packets having a fixed length. If the area is not filled by the packets, the routine returns to step S22 so as to determine whether or not the user data packet has been recorded based on the address stored in step S26. If the user data packet has been recorded, the formatting process is continued while excluding the recorded area from being formatted. If the user data packet has not been recorded, the fixed packets are recorded. Accordingly, the process of steps S22 to S26 is repeated, and the routine is ended after the entire area to be formatted is filled by the fixed packets.
  • the fixed packets are not overwritten on the data which has been recorded while the formatting process is being performed.
  • the recorded data is prevented from being undesirably erased after the formatting process is restarted.
  • FIG.7 is a flowchart of a process when a request for reproduction of data is made while the formatting operation is being performed as a background process in the optical disc recording and reproducing apparatus shown in FIG.1.
  • the controller 9 outputs, in step S31, a message to a host computer so as to notify a user (the host computer) that the formatting process has been completed. Then, in step S32, an actual formatting operation is performed as a background process of the host computer. In the formatting operation, the entire area or a designated area of the optical disc 1 is filled by packets having a fixed length. It is then determined, in step S33, whether or not a request for reproducing data is sent from the host computer.
  • step S33 If it is determined, in step S33, that a request for reproducing data is not sent from the host computer, the routine proceeds to step S35. On the other hand, if it is determined, in step S33, that a request for reproducing data is sent from the host computer, the routine proceeds to step S34. In step S34, the formatting operation is temporarily stopped so as to reproduce data recorded on a designated area. After the reproduction of the data is completed, the routine proceeds to step S35.
  • step S35 it is determined whether or not the area to be formatted is filled by the fixed packets. If the area is not filled by the fixed packets, the routine returns to step S32 so as to repeat the process of steps S32 to S34. If it is determined that the entire area to be formatted is filled by the fixed packets, the routine is ended.
  • a reproducing operation can be performed any time the formatting operation is being progressed.
  • the reproducing operation can be performed without the user being conscious of the formatting process being performed as a background process.
  • the formatting process cannot be continued. Additionally, the formatting of the ejected optical disc is incomplete and a recording and reproducing operation cannot be performed on the optical disc.
  • the optical disc 1 is prevented from being ejected when the formatting process is being performed.
  • FIG.8 is a flowchart of a process when an instruction for ejecting an optical disc is provided during the formatting operation in the optical disc recording and reproducing apparatus according to the present embodiment.
  • step S51 a message to a host computer so as to notify a user (the host computer) that the formatting process has been completed.
  • step S52 an actual formatting operation is performed as a background process of the host computer.
  • the formatting operation the entire area or a designated area of the optical disc 1 is filled by packets having a fixed length. It is then determined, in step S53, whether or not a request for ejecting the optical disc is sent from the host computer.
  • step S53 If it is determined, in step S53, that a request for ejecting the optical disc is not sent from the host computer, the routine proceeds to step S55. On the other hand, if it is determined, in step S53, that a request for ejecting the optical disc is sent from the host computer, the routine proceeds to step S54. In step S54, the formatting operation is continued without ejecting the optical disc 1 and an error message is output to the host computer, and the routine proceeds to step S55.
  • step S55 it is determined whether or not the area to be formatted is filled by the fixed packets. If the area is not filled by the fixed packets, the routine returns to step S52 so as to repeat the process of steps S52 to S54. If it is determined that the entire area to be formatted is filled by the fixed packets, the routine is ended.
  • the optical disc 1 is not ejected when the formatting operation is being performed so that a recording and reproducing operation is prevented from not being performed due to the incomplete formatting.
  • the above-mentioned formatting process may be performed in accordance with programs stored in a memory provided in the controller 9.
  • the program data may be stored in a CD-ROM which is readable by the optical disc recording and reproducing apparatus, or may be supplied from the host computer via the interface 10.
  • a An optical disc recording and reproducing apparatus comprising:
  • said background formatting means includes means for resuming the formatting process by excluding an area in which the user data has been recorded from among areas to be formatted when the packets having a fixed length are not yet recorded in the area in which the user data has been recorded.
  • said background formatting means includes means for interrupting the formatting process when a request for reproducing data recorded in a designated area is made, reproducing the data and thereafter resuming the formatting process.
  • step of enabling comprises the step of notifying completion of the formatting process before the formatting process is completed.
  • step of resuming includes the step of excluding an area in which the user data has been recorded from among areas to be formatted when the packets having the fixed length are not yet recorded in the area in which the user data has been recorded.
  • step of reproducing includes the step of outputting previously prepared information as a result of reproduction of the data recorded in said designated area when the packets having a fixed length are not yet recorded in said designated area by execution of the formatting process.
  • a processor readable medium for storing program code for causing an optical disc recording and reproducing apparatus to format a rewritable optical disc (1), data being recorded on said optical disc by using a fixed packet write method, wherein program code means for starting a formatting process for said optical disc as a background process, the formatting process being performed so as to fill a recording area of said optical disc by packets having a fixed length; program code means for enabling execution of another process while the formatting process is being performed; and program code means for ending the formatting process after the recording area to be formatted has been filled by the packets having the fixed length.
  • program code means for resuming includes program code means for excluding an area in which the user data has been recorded from among areas to be formatted when the packets having the fixed length are not yet recorded in the area in which the user data has been recorded.

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Abstract

An optical disc recording and reproducing apparatus can record data, which is provided in a packet having a fixed length, on an optical disc (1) without waiting for a long time for a completion of a formatting operation. The optical disc (1) is formatted by a formatting process performed as a background process so that another process is acceptable after a start of the formatting process. The formatting process is performed so as to fill at least a predetermined part of a recording area of the optical disc by packets having a fixed length.

Description

    BACKGROUND OF THE INVENTION 1. Field of the Invention
  • The present invention generally relates to an optical disc recording and reproducing apparatus and, more particularly, to an optical disc recording and reproducing apparatus which records information on a rewritable optical disc such as a CD-RW.
  • 2. Description of the Related Art
  • A minimum unit for reproduction of information recorded on a recording area of a compact disc (CD), a recordable optical disc (CD-R) or a rewritable optical disc (CD-RW) is defined as a block of a recording area. Each block can contain information of about 2,048 to 2,352 bytes.
  • A minimum unit for recording information on an optical disc such as a CD-R or a CD-RW is defined as a packet. Each packet comprises at least one user data block, five link blocks preceding the user data block and two link blocks subsequent to the user data block. The five link blocks preceding the user data block include one link block and four run-in blocks. The two link blocks subsequent to the user data block include two run-out blocks.
  • The link blocks are required for interconnecting a plurality of packets when information is recorded on an optical disc such as a CD. The link block does not contain user data. It should be noted that a rule for recording data on a CD is defined by a predetermined standard. Such a rule is referred to as a "linking rule".
  • There are two methods for recording data on an optical disc such as a recordable compact disc (CD-R) or a rewritable compact disc (CD-RW). One of the methods is referred to as a "track at-once method" and the other is referred to as a "packet write method".
  • The track at-once method is for recording information on a track all at one time by using a single packet. The user data blocks in the track are consecutive, and there are no link blocks between the user data blocks. A single track constitutes a recording unit, and ninety-nine tracks can be formed on the optical disc at maximum. A start address and an end address of each track are recorded on a separate area of the optical disc as a "table of contents (TOC)".
  • On the other hand, the packet write method is for recording information on a track by dividing the track into a plurality of packets so that the information is recorded on an individual packet basis. Since this method records information by each individual packet, each user data block is discretely located in a single track and link blocks are provided between adjacent ones of user data blocks.
  • The packet write method is classified into two types, that is, a "fixed packet write method" and a "variable packet write method". In the fixed packet write method, a number of user data blocks within a track is set to a fixed number. The number of user data blocks within a packet is referred to as a packet length or packet size. On the other hand, in the variable packet write method, packets having various packet lengths are provided in a single track.
  • The Universal Disc format (UDF) is a file system that uses the fixed packet write system. The UDF is used by various devices. The UDF utilizes a recording format that takes advantage of a feature of each device.
  • In a conventional CD-R drive such as one disclosed in Japanese Laid-Open Patent Application No.7-141660 , when the recording is performed in accordance with the packet write method, data to be recorded is added to previously recorded packets since only an addition of data is allowed for the CD-R. Accordingly, the UDF uses a variable packet write method referred to as a sequential UDF which can perform a recording only by adding data after the previously recorded data. Thus, there is no need to consider a format.
  • On the other hand, a CD-RW drive is capable of recording data on a CD-RW by overwriting. Thus, the CD-RW drive uses a random UDF which records data by each packet unit and reproduces the data by each block.
  • In order to record and reproduce data at random, the random UDF requires a formatting operation by previously recording packets on the entire recording area or a designated area of the CD-RW, each of the packets having a fixed length, so that the entire recording area or the designated area are filled by the packets. By this formatting operation, data can be randomly recorded on the recording area of the CD-RW, or data recorded on the CD-RW can be randomly reproduced.
  • However, when the above-mentioned formatting operation is performed, it takes a long time to fill the entire recording area or the designated area of the CD-RW by the packets. Thus, there is a problem in that a recording or reproducing operation cannot be performed and completion of the formatting operation data must be waited for when the formatting operation is being performed.
  • The recording capacity of the CD-RW is represented by a time for continuously performing a recording operation. For example, one minute of recording corresponds to 9 megabytes, and data corresponding to about 74 minutes can be recorded on a CD-RW. Thus, it takes about 40 minutes to complete a recording of data including the TOC even if the recording is performed at a double recording speed. This means that one must wait for about 40 minutes until a formatting operation is completed in order to initially use a blank or new CD-RW.
  • Rewritable optical discs such as CD-RW include a structure which enables an optical disc recording and reproducing drive to detect an address on the just-fabricated or just-erased rewritable optical disc. On a CD-RW, this pre-fabricated address corresponds to the ATIP encoded in a wobbled groove structure. This wobble structure consists of a phase structure which is pre-imposed in the spiral track of the rewritable optical disc and which can be detected by an optical disc recording and reproducing drive. The detected signal can be transferred into digital data which correspond to certain areas also on the unformatted rewritable optical disc. Thus, the rewritable optical disc has some address which cannot be erased in order to be able to access to parts of the rewritable optical disc and to be able to format the rewritable optical disc.
  • A typical optical Read Only Memory (ROM) disc drive, however, is not able to use the pre-fabricated address to find a designated area on a rewritable optical disc. An optical ROM disc drive needs a continuous track formed with data, i.e. user data or formatting data, recorded by a laser beam of an optical disc recording and reproducing drive to be able to access a desired area designated by a user or host computer. The continuous track includes addresses that can be read by the ROM disc drive as well as the optical disc recording and reproducing drive. Therefore, the optical disc recording and reproducing drive needs formatting process that provides the continuous track in order for the optical ROM disc drive to access a designated location in the recording area.
  • As is usual in the field of optical disc drives as well as hard disc drives and their communication with host computers, it is always the host computer that instructs where the user data are to be recorded on the data storage medium. Accordingly, the host computer or user sends a request for recording user data to the data storage medium, designating a particular address at which the user data are to be recorded.
  • Accordingly, a controller of the optical disc recording and reproducing drive performs the recording or reproducing process in accordance with the address instructed by the user or host computer.
  • User data can be stored in one fixed packet on a desired location in accordance with the address information as instructed by the user or host computer, regardless of whether the desired location is formatted or not, at least on the basis of the address information provided by the pre-fabricated address such as ATIP. Of course, if the user data cannot be covered by only one fixed packet because of a large amount of user data, the optical disc recording and reproducing drive will use a number of fixed packets to recording all of user data.
  • On the other hand, a typical ROM optical disc drive cannot access such information, if there is no continuous track of data including address and link blocks.
  • The above circumstances are described in JP-A 5-349649, published September 5, 1995 , which corresponds to US 5,559,778 (see in particular US 5,559,778 , column 1 to column 3, line 33). A further relationship to ATIP, the fixed packet write method and the interaction of the user or host computer with an optical disc recording and reproducing drive is known from JP-A 5-283722, published July 21, 1995 , the corresponding US publication of which has the patent number US 5,745,459 . In the latter US reference, (column 13, lines 33 et seq.,) it is in particular disclosed that ATIP is an absolute address written in the guide groove of a recordable optical disc, the ATIP signal being unchangeable. Another reference to the ATIP signal can be derived from JP-A 7-141660 disclosed herein.
  • SUMMARY OF THE INVENTION
  • It is a general object of the present invention to provide an improved and useful optical disc recording and reproducing apparatus in which the above-mentioned problems are eliminated.
  • A more specific object of the present invention is to provide an optical disc recording and reproducing apparatus which can record data, which is provided in a packet having a fixed length, on an optical disc without waiting for a long time for a completion of a formatting operation.
  • Another object of the present invention is to provide a formatting method for formatting a rewritable optical disc without delaying a recording operation or a reproducing operation performed on the optical disc.
  • In order to achieve the above-mentioned objects, there is provided according to one aspect of the present invention an optical disc recording and reproducing apparatus, comprising:
    • recording means for recording data on a rewritable optical disc by using a fixed packet write method; reproducing means for reproducing data recorded on the optical disc by the recording means; and
    • background formatting means for formatting the optical disc by a formatting process performed as a background process so that another process is acceptable after a start of the formatting process, the formatting process being performed so as to fill at least a predetermined part of a recording area of the optical disc by packets having a fixed length.
  • According to the above-mentioned invention, since the formatting process is performed as a background process so that another process can be accepted when the formatting operation is being performed, execution of a recording operation or a reproducing operation may be performed without waiting until the formatting process is completed.
  • In the optical disc recording and reproducing apparatus according to the present invention, the background formatting means may include end-of-process notifying means for notifying completion of the formatting process before the formatting process is completed. Accordingly, a host computer connected to the optical disc recording and reproducing apparatus can accept another process to be performed by the optical disc recording and reproducing apparatus.
  • Additionally, in the optical disc recording and reproducing apparatus according to the present invention, the background formatting means may include means for interrupting the formatting process when a request for recording user data is made, recording the user data on the optical disc and thereafter resuming the formatting process. Accordingly, a recording operation of data can be started at any time even when the formatting process is being performed.
  • Additionally, in the optical disc recording and reproducing apparatus according to the present invention, the background formatting means may include means for resuming the formatting process by excluding an area in which the user data has been recorded from among areas to be formatted when the packets having a fixed length are not yet recorded in the area in which the user data has been recorded. Accordingly, the user data recorded while the formatting process is being performed is not erased by overwriting with the packets having the fixed length when the formatting process is resumed.
  • In the optical disc recording and reproducing apparatus according to the present invention, the background formatting means may include means for interrupting the formatting process when a request for reproducing data recorded in a designated area is made, reproducing the data and thereafter resuming the formatting process. Accordingly, a reproducing operation can be started at any time even when the formatting process is being performed.
  • Additionally, in the optical disc recording and reproducing apparatus according to the present invention, the background formatting means may include means for prohibiting ejection of the optical disc when a request for ejecting the optical disc is made during an execution of the formatting process. Accordingly, the optical disc is not ejected when the formatting process is being performed. Thus, the optical disc is prevented from being incompletely formatted.
  • Additionally, there is provided according to another aspect of the present invention a formatting method for formatting a rewritable optical disc, data being recorded on the optical disc by using a fixed packet write method, the formatting method comprising the steps of;
    starting a formatting process for the optical disc as a background process, the formatting process being performed so as to fill a recording area of the optical disc by packets having a fixed length;
    enabling execution of another process while the formatting process is being performed; and
    ending the formatting process after the recording area to be formatted has been filled by the packets having the fixed length.
  • According to the above-mentioned invention, since the formatting process is performed as a background process so that another process can be accepted when the formatting operation is being performed, execution of a recording operation or a reproducing operation may be performed without waiting until the formatting process is completed.
  • In the formatting method according to the present invention, the step of enabling may comprise the step of notifying of completion of the formatting process before the formatting process is completed.
  • Accordingly, a host computer connected to the optical disc recording and reproducing apparatus can accept another process to be performed by the optical disc recording and reproducing apparatus.
  • The formatting method according to the present invention may further comprise the steps of:
    • interrupting the formatting process when a request for recording user data is made;
    • recording the user data on said optical disc; and
    • resuming the formatting process after the user data has been recorded.
  • Accordingly, a recording operation of data can be started at any time even when the formatting process is being performed.
  • Additionally, in the formatting method according to the present invention, the step of resuming may include the step of excluding an area in which the user data has been recorded from among areas to be formatted when the packets having the fixed length are not yet recorded in the area in which the user data has been recorded.
  • Accordingly, the user data recorded while the formatting process is being performed is not erased by overwriting with the packets having the fixed length when the formatting process is resumed.
  • Additionally, the formatting method according to the present invention may further comprise the steps of:
    • interrupting the formatting process when a request for reproducing data recorded in a designated area is made;
    • reproducing the data in the designated area; and
    • resuming the formatting process after the data recorded in the designated area has been reproduced.
  • Accordingly, a reproducing operation of data can be started at any time even when the formatting process is being performed.
  • Additionally, the formatting method according to the present invention may further comprise the step of prohibiting ejection of the optical disc when a request for ejecting the optical disc is made during an execution of the formatting process.
  • Accordingly, the optical disc is not ejected when the formatting process is being performed. Thus, the optical disc is prevented from being incompletely formatted.
  • Additionally, there is provided according to another aspect of the present invention a processor readable medium storing program codes causing an optical disc recording and reproducing apparatus to perform the above-mentioned formatting methods.
  • Other objects, features and advantages of the present invention will become more apparent from the following detailed description when read in conjunction with the accompanying drawings.
  • BRIEF DESCRIPTION OF THE DRAWINGS
    • FIG.1 is a block diagram of an optical disc recording apparatus according to a first embodiment of the present invention;
    • FIG.2 is an illustration for explaining a track and a format of a packet used in a fixed packet write method;
    • FIG.3 is an illustration for explaining a format of a recording area of an optical disc which has been formatted by the optical disc recording and reproducing apparatus shown in FIG.1.
  • FIG.4 is a flowchart of a formatting process performed by the optical disc recording and reproducing apparatus shown in FIG.1, the formatting process being performed as a background process;
  • FIG.5 is a flowchart of a formatting process performed by the optical disc recording and reproducing apparatus shown in FIG.1 when a request for recording data on the optical disc is made while the formatting process is being performed as a background process;
  • FIG.6 is a flowchart of a formatting process performed by the optical disc recording and reproducing apparatus shown in FIG.1 so as to prevent a recording area from being formatted, user data having been recorded in the recording area, while the formatting process is being performed as a background process;
  • FIG.7 is a flowchart of a formatting process performed by the optical disc recording and reproducing apparatus shown in FIG.1 when a request for reproducing data recorded on the optical disc is made while the formatting process is being performed as a background process;
  • FIG.8 is a flowchart of a formatting process performed by the optical disc recording and reproducing apparatus shown in FIG.1 when a request for ejecting the optical disc is made while the formatting process is being performed as a background process.
  • DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
  • A description will now be given of a first embodiment of the present invention. FIG.1 is a block diagram of an optical disc recording and reproducing apparatus according to the first embodiment of the present invention.
  • The optical disc recording and reproducing apparatus shown in FIG.1 records information on an optical disc 1 such as a CD-RW by providing a train of pits spirally formed on the optical disc. The optical disc recording and reproducing apparatus reads the information on the optical disc 1 by information units referred to as user data blocks. The optical disc recording apparatus according to the present embodiment uses the above-mentioned fixed packet write method to record information on the optical disc 1.
  • As shown in FIG.1, the optical disc recording and reproducing apparatus is provided with a spindle motor 2, an optical pickup 3 and a coarse adjustment motor 4. The spindle motor 2 rotates the optical disc 1. The optical pickup 3 has a semiconductor laser which projects a laser beam L onto a recording area of the optical disc 1. The coarse adjustment motor 4 moves the optical pickup 3 in a radial direction of the optical disc 1 in cooperation with a seek motor (not shown in the figure) provided in the optical pickup 3.
  • The optical disc recording and reproducing apparatus further includes a rotation control system 5, a coarse adjustment motor control system 6, an optical pickup control system 7 and a signal processing system 8. The rotation control system 5 controls operation of the spindle motor 2. The coarse adjustment motor control system 6 controls operation of the coarse adjustment motor 4. The optical pickup control system 7 controls operation of the optical pickup 3. The signal processing system 8 transmits information read by the optical pickup 3 and receives information to be recorded on the optical disc 1 by the optical pickup 3.
  • The optical disc recording apparatus is further provided with a controller 9 and an interface 10. The controller 9 controls the above-mentioned rotation control system 5, the coarse adjustment motor control system 6, the optical pickup control system 7 and the processing system 8. The interface 10 enables communication with an external host computer.
  • In the thus-constructed optical disc recording and reproducing apparatus, the optical pickup 3 is moved in the radial direction of the optical disc 1 while the optical disc 1 is rotated by the spindle motor 2 so as to record or read information by projecting the laser beam L from the semiconductor laser of the optical pickup 3 onto the recording area of the optical disc 1.
  • When the optical disc recording and reproducing apparatus shown in FIG.1 records information, the controller 9 moves the optical pickup 3 in a radial direction of the optical disc 1 while the optical disc 1 is rotated. The laser beam L is projected from the optical pickup 3 onto the recording area of the optical disc 1 at a recording power level so as to record the information on the optical disc 1.
  • Additionally, when the optical disc recording and reproducing apparatus shown in FIG.1 reproduces information recorded on the optical disc 1, the controller 9 moves the optical pickup 3 while the optical disc 1 is rotated. The laser beam L is projected from the optical pickup 3 onto the recording area of the optical disc 1 at a reproducing power level so as to read the information recorded on the optical disc 1. The reproduced information is transferred to the host computer via the interface 10.
  • In the optical disc recording and reproducing apparatus, the controller 9 controls a recording and reproducing operation of data in each track on the optical disc 1 according to the fixed packet write method. The controller 9 also controls a formatting operation for the optical disc 1 in a background process. That is, the controller 9 serves as means for recording data on the rewritable optical disc 1 by the fixed packet write method and reproducing the recorded data. Additionally, the controller 9 sends a notification to notify of a completion of a formatting operation immediately after the formatting operation has started when the optical disc 1 is formatted. Thereafter, the controller 9 serves as background formatting means for formatting the optical disc 1 in a background process so as to record fixed packets in the entire recording area or a designated area of the optical disc 1.
  • Further, the controller 9 serves to interrupt the formatting operation when a request is made for recording user data during the formatting operation in the background process and restart the formatting operation after the user data has been recorded. Additionally, the controller 9 serves to resume the formatting operation, after the formatting operation is restarted while preventing the area in which the user data is recorded from being formatted.
  • Additionally, the controller 9 serves to interrupt the formatting operation when a request is made for reproducing user data recorded in a designated area during the formatting operation in the background process and restart the formatting operation after the user data recorded in the designated area has been reproduced. Additionally, the controller 9 serves to prohibit the optical disc 1 from being ejected when a request is made to eject the optical disc 1 while the formatting operation is performed as the background process.
  • A description will now be given of the fixed packet write method used by the optical disc recording and reproducing apparatus shown in FIG.1. A description will also be given of a format of a packet used in the fixed packet write method. FIG.2 is an illustration for explaining a track and a format of a packet recorded on the optical disc 1 in a fixed packet write method.
  • According to the fixed packet write method, a plurality of tracks are formed in a recording area of the rewritable optical disc 1. Each of the tracks is divided into a plurality of packets each having the same number of user data blocks so that information is recorded for each individual packet at once.
  • Accordingly, in the fixed packet write method, each of the packets 12 in a single track 11 in the recording area of the optical disc 1 has the same packet length, and each of the packets 12 has the same number of the user data blocks.
  • The packet 12 includes a plurality of user data blocks 15 which can be reproduced. Additionally, the packet 12 includes five link blocks preceding the user data blocks 15. The five link blocks consist of one link block 13 and four run-in blocks 14. The packet 12 further includes two link blocks subsequent to the user data blocks 14. The two link blocks consist of two run-out blocks 16. These link blocks are used for connecting the packets 12 to each other when data is recorded in the user data blocks 15 of the packets 12 in the track 11 of the optical disc 1.
  • FIG.3 is an illustration for explaining a format of the recording area of the optical disc which is formatted by the optical disc recording and reproducing apparatus shown in FIG. 1. As shown in FIG.3, when the entire recording area or a designated area of the optical disc 1 is subjected to the formatting operation according to the fixed packet recording method, the entire recording area or the designated area is filled by the fixed packets.
  • A description will now be given of a formatting process performed as a background process in the optical disc recording and reproducing apparatus shown in FIG.1. FIG.4 is a flowchart of the formatting process performed by the optical disc recording and reproducing apparatus shown in FIG.1.
  • Immediately after the formatting process for the optical disc 1 is started, the controller 9 outputs, in step S1, a message to a host computer so as to notify a user (the host computer) that the formatting process has been completed. Then, in step S2, an actual formatting operation is performed as a background process of the host computer. In the formatting operation, the entire area or a designated area of the optical disc 1 is filled by packets having a fixed length. It is determined, in step S3, whether or not the area to be formatted is filled by the packets. If the area is not filled by the packets, the routine returns to step S2. If it is determined that the entire area is filled by the packets, the routine is ended.
  • In the above-mentioned formatting process, since the actual formatting operation is performed as a background process, recording or reproduction of data can be accepted by the host computer while the formatting operation is being progressed. Thus, the host computer dose not wait for a long time to accept the recording or reproduction of data even when the formatting process is being performed.
  • A description will now be given of a case in which a request for recording data on the optical disc 1 is made during the above-mentioned formatting process. FIG.5 is a flowchart of the formatting process performed as a background process when a request for recording is made during the formatting process.
  • Immediately after the formatting process for the optical disc 1 is started, the controller 9 outputs, in step S11, a message to a host computer so as to notify a user (the host computer) that the formatting process has been completed. Then, in step S12, an actual formatting operation is performed as a background process of the host computer. In the formatting operation, the entire area or a designated area of the optical disc 1 is filled by packets having a fixed length. It is then determined, in step S13, whether or not a request for recording is sent from the host computer.
  • If it is determined, in step S13, that a request for recording is not sent from the host computer, the routine proceeds to step S15. On the other hand, if it is determined, in step S13, that a request for recording is sent from the host computer, the routine proceeds to step S14. In step S14, the formatting operation is temporarily stopped so as to record a user data packet. After the recording of the user data packet is completed, the routine proceeds to step S15.
  • In step S15, it is determined whether or not the area to be formatted is filled by the packets. If the area is not filled by the packets, the routine returns to step S12. If it is determined that the entire area to be formatted is filled by the packets, the routine is ended.
  • According to the above-mentioned formatting process, a recording operation can be performed any time the formatting operation is being progressed.
  • However, if the data is recorded in an unformatted area where the fixed packets are not yet recorded by the formatting process being performed, it is possible that fixed packets are overwritten on the recorded data after the formatting process is restarted. This results in erasure of the recorded data. In order to avoid such a problem, the optical disc recording and reproducing apparatus according to the present invention performs a formatting process shown in FIG.6.
  • FIG.6 is a flowchart of the formatting process for preventing a data recorded area from being formatted.
  • Immediately after the formatting process for the optical disc 1 is started, the controller 9 outputs, in step S21, a message to a host computer so as to notify a user (the host computer) that the formatting process has been completed. It is then determined, in step S22, whether or not a user data packet has been recorded. If it is determined that the user data packet has been recorded, the routine proceeds to step S24. On the other hand, if it is determined that the user data packet has not been recorded, the routine proceeds to step S23. In step S23, an actual formatting operation is performed as a background process of the host computer. In the formatting operation, the entire area or a designated area of the optical disc 1 is filled by packets having a fixed length.
  • It is then determined, in step S24, whether or not a request for recording is sent from the host computer. If it is determined, in step S24, that a request for recording is not sent from the host computer, the routine proceeds to step S27. On the other hand, if it is determined, in step S24, that a request for recording is sent from the host computer, the routine proceeds to step S25 in which the formatting operation is temporarily stopped so as to record a user data packet. After the recording of the user data packet is completed, the routine proceeds to step S26. In step S26, the formatting operation is restarted and an address of the area in which the user data packet has been recorded is stored, and the routine proceeds to step S27.
  • In step S27, it is determined whether or not the area to be formatted is filled by the packets having a fixed length. If the area is not filled by the packets, the routine returns to step S22 so as to determine whether or not the user data packet has been recorded based on the address stored in step S26. If the user data packet has been recorded, the formatting process is continued while excluding the recorded area from being formatted. If the user data packet has not been recorded, the fixed packets are recorded. Accordingly, the process of steps S22 to S26 is repeated, and the routine is ended after the entire area to be formatted is filled by the fixed packets.
  • According to the above-mentioned formatting process, the fixed packets are not overwritten on the data which has been recorded while the formatting process is being performed. Thus, the recorded data is prevented from being undesirably erased after the formatting process is restarted.
  • A description will now be given of a case in which a request for reproduction of data is made while the formatting operation is being performed. FIG.7 is a flowchart of a process when a request for reproduction of data is made while the formatting operation is being performed as a background process in the optical disc recording and reproducing apparatus shown in FIG.1.
  • In the process shown in FIG.7, immediately after the formatting process for the optical disc 1 is started, the controller 9 outputs, in step S31, a message to a host computer so as to notify a user (the host computer) that the formatting process has been completed. Then, in step S32, an actual formatting operation is performed as a background process of the host computer. In the formatting operation, the entire area or a designated area of the optical disc 1 is filled by packets having a fixed length. It is then determined, in step S33, whether or not a request for reproducing data is sent from the host computer.
  • If it is determined, in step S33, that a request for reproducing data is not sent from the host computer, the routine proceeds to step S35. On the other hand, if it is determined, in step S33, that a request for reproducing data is sent from the host computer, the routine proceeds to step S34. In step S34, the formatting operation is temporarily stopped so as to reproduce data recorded on a designated area. After the reproduction of the data is completed, the routine proceeds to step S35.
  • In step S35, it is determined whether or not the area to be formatted is filled by the fixed packets. If the area is not filled by the fixed packets, the routine returns to step S32 so as to repeat the process of steps S32 to S34. If it is determined that the entire area to be formatted is filled by the fixed packets, the routine is ended.
  • According to the above-mentioned formatting process, a reproducing operation can be performed any time the formatting operation is being progressed.
  • Thus, the reproducing operation can be performed without the user being conscious of the formatting process being performed as a background process.
  • A description will now be given of a process when an instruction for ejection of the optical disc is provided while the formatting operation is being performed in the optical disc recording and reproducing apparatus according to the present embodiment.
  • If the optical disc 1 is ejected while the formatting process is being progressed, the formatting process cannot be continued. Additionally, the formatting of the ejected optical disc is incomplete and a recording and reproducing operation cannot be performed on the optical disc.
  • Accordingly, in the optical disc recording and reproducing apparatus according to the present embodiment, the optical disc 1 is prevented from being ejected when the formatting process is being performed.
  • FIG.8 is a flowchart of a process when an instruction for ejecting an optical disc is provided during the formatting operation in the optical disc recording and reproducing apparatus according to the present embodiment.
  • In the process shown in FIG.8, immediately after the formatting process for the optical disc 1 is started, the controller 9 outputs, in step S51, a message to a host computer so as to notify a user (the host computer) that the formatting process has been completed. Then, in step S52, an actual formatting operation is performed as a background process of the host computer. In the formatting operation, the entire area or a designated area of the optical disc 1 is filled by packets having a fixed length. It is then determined, in step S53, whether or not a request for ejecting the optical disc is sent from the host computer.
  • If it is determined, in step S53, that a request for ejecting the optical disc is not sent from the host computer, the routine proceeds to step S55. On the other hand, if it is determined, in step S53, that a request for ejecting the optical disc is sent from the host computer, the routine proceeds to step S54. In step S54, the formatting operation is continued without ejecting the optical disc 1 and an error message is output to the host computer, and the routine proceeds to step S55.
  • In step S55, it is determined whether or not the area to be formatted is filled by the fixed packets. If the area is not filled by the fixed packets, the routine returns to step S52 so as to repeat the process of steps S52 to S54. If it is determined that the entire area to be formatted is filled by the fixed packets, the routine is ended.
  • As mentioned above, the optical disc 1 is not ejected when the formatting operation is being performed so that a recording and reproducing operation is prevented from not being performed due to the incomplete formatting.
  • It should be noted that the above-mentioned formatting process may be performed in accordance with programs stored in a memory provided in the controller 9. The program data may be stored in a CD-ROM which is readable by the optical disc recording and reproducing apparatus, or may be supplied from the host computer via the interface 10.
  • The present invention is not limited to the specifically disclosed embodiments, and variations and modifications may be made without departing from the scope of the present invention.
  • Preferred embodiments and/or advantageous features of the invention are indicated as follows.
  • Preferred embodiments and/or advantageous features of the invention are indicated as follows.
  • A An optical disc recording and reproducing apparatus, comprising:
    • recording means for recording data on a rewritable optical disc (1) by using a fixed packet write method; and reproducing means for reproducing data recorded on said optical disc (1) by said recording means,
    characterized by:
    • background formatting means for formatting said optical disc (1) by a formatting process performed as a background process so that another process is acceptable after a start of the formatting process, the formatting process being performed so as to fill at least a predetermined part of a recording area of said optical disc (1) by packets having a fixed length.
  • B The optical disc recording and reproducing apparatus as mentioned in embodiment A, wherein said background formatting means includes end of process notifying means for notifying of completion of the formatting process before the formatting process is completed.
  • C The optical disc recording and reproducing apparatus as mentioned in embodiment A, wherein said background formatting means includes means for interrupting the formatting process when a request for recording user data is made, recording the user data on said optical disc and thereafter resuming the formatting process.
  • D The optical disc recording and reproducing apparatus as mentioned in embodiment C, wherein said background formatting means includes means for resuming the formatting process by excluding an area in which the user data has been recorded from among areas to be formatted when the packets having a fixed length are not yet recorded in the area in which the user data has been recorded.
  • E The optical disc recording and reproducing apparatus as mentioned in embodiment A, wherein said background formatting means includes means for interrupting the formatting process when a request for reproducing data recorded in a designated area is made, reproducing the data and thereafter resuming the formatting process.
  • F The optical disc recording and reproducing apparatus as mentioned in embodiment A, wherein said background formatting means includes means for prohibiting ejection of said optical disc (1) when a request for ejecting said optical disc is made during an execution of the formatting process.
  • G A formatting method for formatting a rewritable optical disc (1), data being recorded on said optical disc by using a fixed packet write method, said formatting method wherein
    starting a formatting process for said optical disc (1) as a background process, the formatting process being performed so as to fill a recording area of said optical disc (1) by packets having a fixed length;
    enabling execution of another process while the formatting process is being performed; and ending the formatting process after the recording area to be formatted has been filled by the packets having the fixed length.
  • H The formatting method as mentioned in embodiment G, wherein the step of enabling comprises the step of notifying completion of the formatting process before the formatting process is completed.
  • I The formatting method as claimed in mentioned in embodiment G, wherein
    interrupting the formatting process when a request for recording user data is made;
    recording the user data on said optical disc; and resuming the formatting process after the user data has been recorded.
  • J The formatting method as mentioned in embodiment I, wherein the step of resuming includes the step of excluding an area in which the user data has been recorded from among areas to be formatted when the packets having the fixed length are not yet recorded in the area in which the user data has been recorded.
  • K The formatting method as mentioned in embodiment G, wherein
    interrupting the formatting process when a request for reproducing data recorded in a designated area is made; reproducing the data in said designated area; and
    resuming the formatting process after the data in said designated area has been reproduced.
  • L The formatting method mentioned in embodiment K, wherein the step of reproducing includes the step of outputting previously prepared information as a result of reproduction of the data recorded in said designated area when the packets having a fixed length are not yet recorded in said designated area by execution of the formatting process.
  • M The formatting method as mentioned in embodiment G, wherein the step of prohibiting ejection of said optical disc when a request for ejecting said optical disc is made during an execution of the formatting process.
  • N A processor readable medium for storing program code for causing an optical disc recording and reproducing apparatus to format a rewritable optical disc (1), data being recorded on said optical disc by using a fixed packet write method, wherein
    program code means for starting a formatting process for said optical disc as a background process, the formatting process being performed so as to fill a recording area of said optical disc by packets having a fixed length;
    program code means for enabling execution of another process while the formatting process is being performed; and
    program code means for ending the formatting process after the recording area to be formatted has been filled by the packets having the fixed length.
  • O The processor readable medium as mentioned in embodiment N, wherein the program code means for enabling comprises program code means for notifying of completion of the formatting process before the formatting process has been completed.
  • P The processor readable medium as mentioned in embodiment N, wherein
    program code means for interrupting the formatting process when a request for recording user data is made; program code means for recording the user data on said optical disc; and
    program code means for resuming the formatting process after the user data has been recorded.
  • Q The processor readable medium as mentioned in embodiment P, wherein the program code means for resuming includes program code means for excluding an area in which the user data has been recorded from among areas to be formatted when the packets having the fixed length are not yet recorded in the area in which the user data has been recorded.
  • R The processor readable medium as mentioned in embodiment N, wherein
    program code means for interrupting the formatting process when a request for reproducing data recorded in a designated area is made;
    program code means for reproducing the data in said designated area; and
    program code means for resuming the formatting process after the data has been recorded in said designated area.
  • S The processor readable medium as mentioned in embodiment N, wherein program code means for prohibiting ejection of said optical disc when a request for ejecting said optical disc is made during an execution of the formatting process.

Claims (12)

  1. A method for formatting a rewritable optical disc (1) in a rewritable optical disc recording and reproducing apparatus being connected to a host computer, wherein data being recorded on said rewritable optical disc by using a fixed packet write method, wherein:
    - performing a formatting process for said rewritable optical disc (1), wherein fixed packets are recorded by said recording and reproducing apparatus by using the fixed packet write method;
    - notifying completion of the formatting process to the host computer, before performing the formatting process as a background formatting process;
    - receiving a request for recording user data from the host computer in a desired area on the rewritable optical disc, said desired area being designated by the request for recording;
    - interrupting the formatting process and recording the user data in the desired area on the rewritable optical disc using the fixed packet write method;
    - resuming the formatting process after the recording of the user data in the desired area has been completed, if the entire area or a designated area of the rewritable optical disc has not already been filled with packets of a fixed length using said fixed packet write method.
  2. A method for formatting a rewritable optical disc (1) in a rewritable optical disc recording and reproducing apparatus being connected to a host computer, wherein data being recorded on said rewritable optical disc by using a fixed packet write method, wherein:
    - performing a formatting process for said rewritable optical disc (1), wherein fixed packets are recorded by said recording and reproducing apparatus by using the fixed packet write method;
    - notifying completion of the formatting process to host computer, before performing the formatting process as a background formatting process;
    - receiving a request for recording user data from the host computer in a desired area on the rewritable optical disc;
    - interrupting the formatting process and recording the user data in the desired area on the rewritable optical disc using the fixed packet write method;
    - resuming the formatting process after the recording of the user data has been completed, if the entire area or a designated area of the rewritable optical disc has not already been filled with packets of a fixed length using said fixed packet write method.
  3. The method according to one of claims 1 and 2,
    wherein the user data is recorded in the formatted area of the rewritable optical disc.
  4. The method according to one of claims 1 and 2,
    wherein the user data is recorded in the unformatted area of the rewritable optical disc.
  5. The method of claim 5, wherein an address of the desired area with the user data is stored and the formatting process is resumed excluding the desired area of which address has been stored by said recording and reproducing apparatus.
  6. The method of one of claims 1 to 5, wherein
    - the user sends the request for reproducing recorded user data;
    - the recording and reproducing apparatus interrupts the background formatting process;
    - the recording and reproducing apparatus accesses to the area with the user data and reproduces the user data from the rewritable optical disc; and
    - the recording and reproducing apparatus resumes the background formatting process.
  7. The method of claim 6, wherein the resumed background formatting process excludes the area with the user data.
  8. The method as claims in one of claims 1 to 7, wherein ejection of said optical disc when a request for ejecting said optical disc is made during an execution of formatting process is prohibited.
  9. A rewritable optic disc recording and reproducing apparatus using a fixed packet write method for recording on and reproducing data from a rewritable optical disc, wherein said apparatus is prepared to be controlled by means of the method according to one of claims 1 to 8.
  10. The optical disc recording and reproducing apparatus according to claim 9, comprising recording means for recording data on a rewritable optical disc according to a fixed length packet write method and reproducing means for reproducing the data recorded by said recording means, further including:
    background formatting means for performing the background formatting process, to fill up at least a part of a recording area of the rewritable optical disc with packets having a fixed length.
  11. A computer readable recording medium storing a program for causing a computer to perform a recording and reproducing process on a rewritable optical disc including a recording process to record data on a rewritable optical disc according to a fixed length packet write method on a reproducing process to reproduce the data recorded by said recording process said program being prepared to perform the steps of the method according to one of claims 1 to 8.
  12. A system including a rewritable optical disc recording and reproducing apparatus and a user in particular a host computer both being prepared for communication on the basis of program data for recording and reproducing data on a rewritable optical disc on the basis of a fixed packet write method, wherein the system is prepared to run by means of the method according to one of claims 1 to 8.
EP07117370A 1997-08-25 1998-08-24 An optical disc recording and reproducing apparatus for performing a formatting process as a background process and a method for formatting an optical disc by a background process Withdrawn EP1868199A1 (en)

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JP22792197 1997-08-25
EP98115896A EP0899735A3 (en) 1997-08-25 1998-08-24 An optical disc recording and reproducing apparatus for performing a formatting process as a background process and a method for formatting an optical disc by a background process

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EP07117376A Ceased EP1865507A1 (en) 1997-08-25 1998-08-24 An optical disc recording and reproducing apparatus for performing a formatting process as a background process and a method for formatting an optical disc by a background process
EP04006218A Withdrawn EP1441345A3 (en) 1997-08-25 1998-08-24 An optical disc recording and reproducing apparatus for performing a fomatting process as a background process and a method for formatting an optical disc by a background process
EP98115896A Withdrawn EP0899735A3 (en) 1997-08-25 1998-08-24 An optical disc recording and reproducing apparatus for performing a formatting process as a background process and a method for formatting an optical disc by a background process

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EP04006218A Withdrawn EP1441345A3 (en) 1997-08-25 1998-08-24 An optical disc recording and reproducing apparatus for performing a fomatting process as a background process and a method for formatting an optical disc by a background process
EP98115896A Withdrawn EP0899735A3 (en) 1997-08-25 1998-08-24 An optical disc recording and reproducing apparatus for performing a formatting process as a background process and a method for formatting an optical disc by a background process

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US6172955B1 (en) 2001-01-09
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EP1441345A2 (en) 2004-07-28
USRE42584E1 (en) 2011-08-02
EP0899735A2 (en) 1999-03-03
JP3652675B2 (en) 2005-05-25
JP2003162868A (en) 2003-06-06
JP3474110B2 (en) 2003-12-08
JPH11134799A (en) 1999-05-21
EP1441345A3 (en) 2004-10-06

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